• 제목/요약/키워드: Heating and cooling operation

검색결과 212건 처리시간 0.04초

고온기 대형 단동하우스를 이용한 파프리카 품종별 재배실증 (Cultivation Demonstration of Paprika (Capsicum annuum L.) Cultivars Using the Large Single-span Plastic Greenhouse to Overcome High Temperature in South Korea)

  • 여경환;박석호;유인호;이희주;위승환;조명철;이우문;허윤찬
    • 생물환경조절학회지
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    • 제30권4호
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    • pp.429-440
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    • 2021
  • 본 연구는 고온기 원예작물의 안정 생산을 위해 대형 단동하우스 '사계절하우스'를 파프리카 재배에 활용 시 시설 내부 기상환경 및 파프리카 품종별 생육, 수량, 품질 등을 분석하고 근권냉방 효과 등을 구명하여 파프리카 재배환경 조건을 최적화 하기 위한 기초자료로 사용하고자 수행하였다. 정식 후부터 재배 종료 시점(2020년 5-11월)까지 시설내 평균 적산광량은 12.7MJ·m-2d-1로, 온실외부의 평균 광량인 14.1MJ·m-2d-1의 90% 수준으로 나타났다. 일 년중 가장 기온이 높은 7-8월의 온실내 24시간 평균온도는 외기보다 3.04℃ 낮았고, 장마가 끝난 8월 12일 이후에는 평균 4.07℃ 낮게 나타났다. 시설 내 포그 냉방 가동(6월 13일) 이전 일평균 상대습도는 최저 40%(주간 20%) 수준까지 떨어져 작물재배에 적합하지 않은 상태였으나 포그를 가동한 이후 주간 상대습도는 70-85% 수준으로 증가된 것으로 나타났다. 평균 수분부족분(humidity deficit)은 포그 공급전에는 최고 12.7g/m3 까지 상승하여 매우 건조한 조건이었으나, 포그 공급 후 고온기(7-8월)에 평균 3.7g/m3으로 감소하였고, 저온기(10-11월)로 갈수록 다시 증가되는 경향이었다. 주간 잔존 CO2 농도는 전체 재배기간동안 평균 707ppm으로 나타났다. '20년 7월 27일부터 11월 23일까지 수확한 파프리카의 품종별 상품수량(kg/10a)은 주황색 품종 'DSP-7054'과 황색 품종 'Allrounder'이 각각 14,255kg/10a와 14,161kg/10a로 다른 품종에 비해 높았고, 다음으로 주황색 'K-Gloria orange', 황색 'Volante', 적색 'Nagano' 품종 순으로 나타났다. 사계절하우스에서 고온기(8월)에 생산된 대과종 파프리카의 품종별 과실품질 특성을 조사한 결과, 과고, 과폭, 과실당도, 과육두께에서 품종 간 유의성이 인정되었다. 당도는 주황색 품종인 'DSP-7054'와 'Naarangi'에서 높게 나타났고, 과육두께는 황색과 주황색 품종인 'K-Gloria orange'와 'Allrounder'에서 높게 나타났다. 근권 냉방처리 기간 동안 배지내 일평균 온도는 20.7℃로 나타났고, 근권 난방처리 기간 동안 배지내 일평균 온도는 23.4℃로 나타났다. 근권부 냉난방 처리를 통해 상품수량은 무처리구에 비해 비해 'Nagano' 16.5%, 'Allrounder' 1.3%, 'Naarangi' 20.2%, 및 'Raon red' 17.3% 증가하였고, 품종 전체로는 16.1% 증가하였다. 근권 냉난방처리에 의해 과실의 경도는 4개 품종 평균 5.7% 증가하였으나 다른 품질 지표에서는 유의성있는 차이가 나타나지 않았다.

이중피복 온실의 피복방법과 환경조절에 따른 온습도 및 광합성유효광량자속 분포 특성 (Characteristics of Temperature, Humidity and PPF Distribution by Covering Method and Environmental Control in Double Covering Greenhouse)

  • 이현우;심상연;김영식
    • 생물환경조절학회지
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    • 제21권1호
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    • pp.1-11
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    • 2012
  • 관행 이중피복온실과 공기주입 이중피복온실에 대하여 보온, 난방, 환기, 냉방 등 환경조절에 따른 온실내부의 환경변화를 연중 측정하여 온습도 및 광환경 분포특성을 비교분석함으로서 기존 온실의 환경을 개선할 수 있는 방안을 제시하기 위해 수행한 연구결과를 요약하면 다음과 같다. 겨울철 야간에 난방시 공기주입온실과 관행온실의 커튼과 피복재 사이의 온도는 거의 비슷한 값을 보여주고 있어 보온효과는 거의 동일한 것으로 나타났다. 온실내부의 커튼 안쪽의 습도는 난방으로 인해 외부습도보다 낮게 유지되었으나 커튼과 피복재 사이의 습도는 거의 100%로 유지되었다. 주간의 우천시에도 두 가지 온실의 내부온도가 거의 비슷하여 보온효과는 동일한 것으로 나타났다. 주간에 천창환기시 두 온실 모두 일사로 인해 상하방향으로 온도의 편차가 크게 발생하였고, 공기주입온실이 관행온실에 비해 온도가 약간 더 낮기 때문에 환기효과가 더 우수한 것으로 판단된다. 온도분포와 마찬가지로 상하방향으로 습도편차가 크게 발생하였으며, 공기주입온실이 관행온실에 비해 습도가 약간 더 높게 나타나 환기효과가 더 우수한 것으로 판단된다. 야간에 천창환기시에는 두 온실 모두 주간과는 달리 일사가 없기 때문에 온실내부 전체적으로 균일한 온습도분포를 보여주고 있다. 간헐적 포그분사 냉방을 실시하였을 때 두 온실 모두 상하좌우로 비교적 균일한 온습도분포를 보여주었다. 연속 포그분사 냉방을 실시한 경우 전체적으로 균일한 온습도 분포를 보여주었으며, 평균 약 $3.5^{\circ}C$ 정도의 냉방효과가 있는 것으로 나타났다. 커튼과 지붕피복재 사이의 공간에 대한 상대습도와 절대습도의 변화를 분석한 결과 거의 커튼을 닫는 시점에서 피복재의 온도가 노점 온도 이하로 낮아지기 시작하기 때문에 커튼을 닫음과 동시에 제습기를 사용하여 지붕과 커튼 사이 공간의 공기에 함유된 수증기를 제거하면 지붕의 피복재에 발생하는 결로를 억제할 수 있을 것으로 판단된다. 피복재의 사용기간이 경과함에 따라 공기주입온실에 비해 관행온실이 광투과율이 더 감소하는 것으로 나타났다. 이는 온실내부 피복재를 권취식으로 개폐하는 과정에서 먼지와 결로로 인해 오염되기 때문인 것으로 판단된다. 따라서 피복재의 광투과율이 감소되는 것을 방지하기 위해서는 피복재의 권취식 개폐방식을 지양하는 것이 바람직할 것으로 판단된다. 결론적으로 온실의 이중피복 방법을 공기주입 이중피복형태로 하고 천창을 용마루 위치에 나비형태로 설치한다면 관행 이중피복 온실과 동일한 에너지절감효과를 유지하면서 광투과율을 현저히 개선할 수 있고 환기효율도 높일 수 있을 것으로 판단된다.

공기조화, 냉동 분야의 최근 연구 동향 - 1998년 1999년 학회지 논문에 대한 종합적 고찰 - (Recent Progress in Air Conditioning and Refrigeration Research - A Review of papers Published in the Korean Journal of Air-Conditioning and Refrigeration Engineering in 1998 and 1999 -)

  • 이재헌;김광우;김병주;이재효;김우승;조형희;김민수
    • 설비공학논문집
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    • 제12권12호
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    • pp.1098-1125
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    • 2000
  • A review on the papers published in the Korean Journal of Air-Conditioning and Refrigerating Engineering in 1998 and 1999 has been done. Focus has been put on current status of research in the aspect of heating, cooling, ventilation, sanitation and building environment. The conclusions are as follows. 1) A review of the recent studies on fluid flow, turbomachinery and pipe-network shows that many experimental investigations are conducted in applications of impingement jets. Researches on turbulent flows, pipe flows, pipe-networks are focused on analyses of practical systems and prediction of system performance. The results of noise reduction in the turbomachinery are also reported. 2) A review of the recent studies on heat transfer analysis and heat exchanger shows that there were many papers on the channel flow with the application to the design of heat exchanger in the heat transfer analysis. Various experimental and numerical papers on heat exchanger were also published, however, there were few papers available for the analysis of whole system including heat exchanger. 3) A review of the recent studies on heat pump system have focused on the multi-type system and the heat pump cycle to utilize treated sewage as the heat source. The defrosting and the frosting behaviors in the fin-tube heat exchanger is experimentally examined by several authors. Several papers on the ice storage cooling system are presented to show the dynamic simulation program and optimal operation conditions. The study on the micro heat pipes for the cooling of high power electronic components is carried out to examine the characteristics of heat and mass transfer processed. In addition to these, new type of separate thermosyphon is studied experimentally. 4) The recent studies on refrigeration/air conditioning system have focused on the system performance and efficiency for new alternative refrigerants. New systems operating with natural refrigerants are drawing lots of attention. In addition to these, evaporation and condensation heat transfer characteristics of traditional and new refrigerants are investigated for plain tubes and also for microfin tubes. Capillary tubes and orifice are main topics of research as expansion devices and studies on thermophysical properties of new refrigerants and refrigerant/oil mixtures are widely carried out. 5) A review of the recent studies on absorption cooling system shows that numerous experimental and analytical studies on the improvement of absorber performance have been presented. Dynamic analysis of compressor have been performed to understand its vibration characteristics. However research works on tow-phase flow and heat transfer, which could be encountered in the refrigeration system and various phase-change heat exchanger, were seemed to be insufficient. 6) A review of recent studies on duct system shows that the methods for circuit analysis, and flow balancing have been presented. Researches on ventilation are focused on the measurement of ventilation efficiency, and variation of ventilation efficiency with ventilation methods by numerous experimental and numerical studies. Furthermore, many studies have been conducted in real building in order to estimate indoor thermal environments. Many research works to get some information for cooling tower design have been performed but are insufficient. 7) A review on the recent studies on architectural thermal environment and building mechanical systems design shows that thermal comfort analysis is sitting environment, thermal performance analysis of Korean traditional building structures., and evaluation of building environmental load have been performed. However research works to improve the performance of mechanical system design and construction technology were seemed to be insufficient.

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파일로트 규모 음식쓰레기 2상 혐기소화 처리공정에 관한 연구 (Pilot Scale Anaerobic Digestion of Korean Food Waste)

  • 이준표;이진석;박순철
    • 태양에너지
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    • 제18권3호
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    • pp.197-203
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    • 1998
  • A 5 ton/day pilot scale two-phase anaerobic digester was constructed and tasted to treat Korean food wastes in Anyang city. The process was developed based on 3 years of lab-scale experimental results on am optimim treatment method for the recovery of biogas and humus. Problems related to food waste are ever Increasing quantity among municipal solid wastes(MSW) and high moisture and salt contents. Thus our food waste produces large amounts of leachate and bed odor in landfill sites which are being exhausted. The easily degradable presorted food waste was efficiently treated in the two-phase anaerobic digestion process. The waste contained in plastic bags was shredded and then screened for the removal of inert material such as fabrics and plastics, and subsequently put into the two-stage reactors. Heavy and light inerts such as bones, shells, spoons and plastic pieces were again removed by gravity differences. The residual organic component was effectively hydrolyzed and acidified in the first reactor with 5 days space time at pH of about 6.5. The second, methanization reactor part of which is filled with anaerobic fillters, converted the acids into methane with pH between 7.4 to 7.8. The space time for the second reactor was 15 days. The effluent from the second reactor was recycled to the first reactor to provide alkalinities. The process showed stable steady state operation with the maximum organic rate of 7.9 $kgVS/m^3day$ and the volatile solid reduction efficiency of about 70%. The total of 3.6 tons presorted MSW containing 2.9 tons of food organic was treated to produce about $230m^3$ of biogas with 70% of methane and 80kg humus. This process is extended to full scale treating 15 tons of food waste a day in Euiwang city and the produced biogas is utilized for the heating/cooling of adjacent buildings.

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자연광 기반 적층형 식물공장의 열환경에 대한 수치해석 연구 (Numerical Study on the Thermal Environment of a Natural Light Based Multi-layered Plant Factory)

  • 박동윤;장성택;장성주
    • KIEAE Journal
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    • 제13권5호
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    • pp.43-50
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    • 2013
  • Recent researches on plant factory system deal with the convergence of lighting technology, agricultural technology inclusive to the high-tech industries worldwide in order to respond to the decreasing crop harvest due to global warming and abnormal weather phenomena. However, the fundamental performance standard is not currently being introduced in the case of plants factory and its commercialization is not activated because of high initial investment and operating cost. Large portion of the initial investment and operating cost of a plant factory is ascribed to artificial light sources and thermal control facilities, therefore, innovation should be provided in order to improve the economics of the plant factory. As an alternative, new plant factory could harness solar thermal and geothermal systems for heating, cooling and ventilation. In this study, a natural light dependent multi-layer plant factory's thermal environment was analyzed with two-dimensional numerical methods to elicit efficient operation conditions for optimized internal physical environment. Depending on the supply air temperature and airflow rate introduced in the facility, the temperature changes around the crops was interpreted. Since the air supplied into the plant factory does not stay long enough, the ambient temperature predicted around the plating trays was not significantly different from that of the supplied air. However, the changes of airflow rate and air flow pattern could cause difference to the temperature around the planting trays. Increasing the amount of time of air staying around the planting trays could improve energy performance in case the thermal environment of a natural light based multi-layer plant factory is considered.

전자빔 물리증착을 이용한 고체 산화물 연료전지의 제조 : I. YSZ 박막 전해질의 제조 (Fabrication of Solid Oxide Fuel Cells with Electron Beam Physical Vapor Deposition: I. Preparation of Thin Electrolyte Film of YSZ)

  • 김형철;구명서;박종구;정화영;김주선;이해원;이종호
    • 한국세라믹학회지
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    • 제43권2호
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    • pp.85-91
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    • 2006
  • Electron Beam Physical Vapor Deposition (EB-PVD) was applied to fabricate a thin film YSZ electrolyte with large area on the porous NiO-YSZ anode substrate. Microstructural and thermal stability of the as-deposited electrolyte film was investigated via SEM and XRD analysis. In order to obtain an optimized YSZ film with high stability, both temperature and surface roughness of substrate were varied. A structurally homogeneous YSZ film with large area of $12\times12\;cm^2$ and high thermal stability up to $900^{\circ}C$ was fabricated at the substrate temperature of $T_s/T_m$ higher than 0.4. The smoother surface was proved to give the better film quality. Precise control of heating and cooling rate of the anode substrate was necessary to obtain a very dense YSZ electrolyte with high thermal stability, which affords to survive after post heat treatment for fabrication a cathode layer on it as well as after long time operation of solid oxide fuel cell at high temperature.

SMH 액추에이터 시스템 설계 및 개발 (Design and Development of SMH Actuator System)

  • 권대규;최광훈;방두열;이성철;김남균
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.551-555
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    • 2005
  • This paper presents the temperature-pressure characteristics of SMH actuator using a peltier module. The simple SMH actuator, consisting of the plated hydrogen-absorbing alloy as a power source, Peltier elements as a heat source and a cylinder with metal bellows a functioning part has been developed. The SMH actuator is characterized by its small size, low weight, noiseless operation and a compliance similar to that of the human body. A new special metal hydride(SMH) actuator that uses the reversible reaction between the heat energy and mechanical energy of a hydrogen absorbing ally. It is well known that hydrogen-absorbing alloys can reversibly absorb and desorb a large amount of hydrogen, more than about 1000 times as their own volume. To improve the thermal conductivity of the hydrogen-absorbing alloy, an electro-less copper plating has been carried out. The effects of the electro-less copper plating and the dynamic characteristics of the SMH actuator have been studied. The hydrogen equilibrium pressure increases and hydrogen is desorbed by heating the hydrogen-absorbing alloys, whereas by cooling the alloys, the hydrogen equilibrium pressure decreases and hydrogen is absorbed. Therefor, the SMH actuator has the characteristic of being light and easy to use and so is suitable for use in medical and rehabilitation applications.

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수주지열정의 지하수 유동 및 지열 이동 예측을 위한 수치 모델링 기법 개발 (Development of a Numerical Modeling Technique for Predicting Groundwater flow and Heat Transport in a Standing Column Well)

  • 박성민;황기섭;문종필;김중휘
    • 지질공학
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    • 제26권4호
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    • pp.461-471
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    • 2016
  • 수주지열정의 지하수 유동 및 지열 이동 현상을 모사할 수 있는 수치 모델링 기법을 제시하기 위하여 열-수리학적 모델인 TOUGH2를 기반으로 한 모듈을 개발하였고 두 유형의 수주지열정에서의 냉방 및 난방 운영을 수치 모의하였다. 수치 모델링 결과들은 수주지열정의 냉난방 운영이 주변 지층 및 지하수와의 열교환 및 유체 혼합에 크게 영향을 받으며, 특히 PVC 또는 PE 파이프 내부와 수주지열정 내부에서 서로 반대방향으로 유동하는 유입수와 유출수 간의 열교환이 중요한 요소임을 보여준다. 또한 본 연구에서 개발 및 제안된 수치 모델링 기법이 수주지열정의 내부 구조 및 유체 유동과 열 이동 현상을 합리적으로 모사할 수 있음을 보여준다. 이러한 수치 모델링 기법은 수주지열정의 설계, 시공 및 운영 단계에서 열교환 성능을 정량적으로 분석할 때 유용하게 활용될 수 있을 것으로 기대된다.

수소저장합금을 이용한 SMH 액추에이터 시스템 개발 (Development of SMH Actuator System Using Hydrogen-Absorbing Alloy)

  • 권대규;홍경주;김경;전원석;방두열;이성철;김남균
    • 제어로봇시스템학회논문지
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    • 제13권11호
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    • pp.1067-1073
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    • 2007
  • This paper presents development of an special metal hydride(SMH) actuator system using a peltier module. The newly developed simple SMH actuator, consisting of the plated hydrogen-absorbing alloy as a power source, Peltier elements as a heat source and a cylinder with metal bellows as a functioning part, has been developed. The SMH actuator is characterized by its small size, low weight, noiseless operation and a compliance similar to that of human body. A new SMH actuator that uses reversible reactions between the heat energy and mechanical energy of a hydrogen absorbing alloy. It is well known that hydrogen-absorbing alloys can reversibly absorb and desorb a large amount of hydrogen, more than about 1000 times of their own volume. To improve the thermal conductivity of the hydrogen-absorbing alloy, an electro-less copper plating has been carried out. For this purpose, the effects of the electro-less copper plating and the dynamic characteristics of the SMH actuator have been studied. The hydrogen equilibrium pressure increases and hydrogen is desorbed by heating the hydrogen-absorbing alloys, whereas by cooling the alloys, the hydrogen equilibrium pressure decreases and hydrogen is absorbed. The SMH actuator has the characteristic of being light and easy to use. Therefore, it is suitable for medical and rehabilitation applications.

Development of SMH Actuator System Using Hydrogen-Absorbing Alloy

  • Kwon, Tae-Kyu;Jeon, Won-Suk;Pang, Du-Yeol;Choi, Kwang-Hun;Kim, Nam-Gyun;Lee, Seong-Cheol
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.1328-1333
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    • 2005
  • This paper presents the temperature-pressure characteristics of a new SMH actuator using a Peltier module. The SMH actuator is characterized by its small size, low weight, noiseless operation, and compliance similar to that of the human body. The simple SMH actuator, consisting of the plated hydrogen-absorbing alloys as a power source, Peltier elements as a heat source, and a cylinder with metal bellows as a functioning part has been developed. To improve the thermal conductivity of the hydrogen-absorbing alloy, an assembly of copper pipes has been used. It is well known that hydrogen-absorbing alloys can reversibly absorb and desorb a large amount of hydrogen, more than about 1000 times of their own volume. The hydrogen equilibrium pressure increases when hydrogen is desorbed by heating of the hydrogen-absorbing alloys, whereas by cooling the alloys, the hydrogen equilibrium pressure decreases and hydrogen is absorbed. The new special metal hydride (SMH) actuator uses the reversible reaction between the heat energy and mechanical energy of a hydrogen absorbing alloys. The desirable characteristics of SMH actuator, which makes it suitable for the uses in medical and rehabilitation applications, have been also studied. For this purpose, the characteristics of the new SMH actuator for different temperature, pressure, and external load were explored.

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